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Bearingless motor's radial suspension force control based on virtual winding current analysis

机译:基于虚拟绕组电流分析的无轴承电机径向悬浮力控制

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摘要

Decoupling control of torque and suspension force is the key technology to achieve stable operation for bearingless motors. In this paper, after a general introduction of the principle of radial suspension forces for the bearingless permanent magnet synchronous motor (BPMSM), a new analysis method based on virtual winding current is presented. Based on the proposed analysis method, the corresponding theoretical analysis of suspension operation is presented. Meanwhile, the control strategy of stable operation is put forward for the BPMSM. In order to testify the validity of the proposed analysis method, the relevant experiments are designed and conducted. It can be concluded that the experiment results are very close to theoretical analyses based on the proposed method. Moreover, the validity of control strategy can be confirmed, which establishes foundations for further research.
机译:扭矩和悬架力的解耦控制是实现无轴承电机稳定运行的关键技术。本文在全面介绍了无轴承永磁同步电动机径向悬浮力原理后,提出了一种基于虚拟绕组电流的新型分析方法。基于提出的分析方法,提出了相应的悬架运行理论分析。同时,针对BPMSM提出了稳定运行的控制策略。为了证明所提出的分析方法的有效性,设计并进行了相关实验。可以得出结论,实验结果与基于该方法的理论分析非常接近。此外,可以确定控制策略的有效性,这为进一步研究奠定了基础。

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